Ubiquitin specific protease 7 maintains pluripotency of mouse embryonic stem cells through stabilization of β-catenin.

Taha Bartu Hayal
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引用次数: 1

Abstract

Embryonic stem cells (ESCs), which are derived from the undifferentiated inner cell mass of the embryo, can differentiate every cell type of the body regarding their pluripotency. Therefore, human or mouse ESCs can be used as an unlimited cell source for numerous researches or therapeutical approaches. However, pluripotency maintenance of ESCs during in vitro culture is challenging because of their endless differentiation capacity. In the current study, the effect of USP7 on pluripotency maintenance of mouse ESCs (mESCs) has been investigated with the help of cell viability assay, morphological analysis, alkaline phosphatase (ALP) staining, qPCR analysis, and Western Blotting. 600 nM P5091 application, which showed no significant toxicity in mESCs, increased the total ubiquitinated protein amount as a proof of the accomplishment of proper USP7 inhibition. Morphological analysis and ALP activity evaluation indicated that dual inhibition of GSK3 and MEK together with leukemia inhibitory factor (LIF) treatment protects the pluripotency in presence of active USP7 enzyme. Yet, inactivation of USP7 reduced the ALP activity and altered the cell morphology in each treatment group. This morphological change and decreased ALP activity refer to differentiated mESCs. These findings were supported by gene expression and protein analysis. Gene expressions and protein amounts of pluripotency related Oct4, Nanog, c-Myc, Sox2 and Klf4 transcription factors decreased significantly after USP7 inhibition. Together with this observation, a remarkable reduction in β-Catenin expression was also noticed. It was also observed that USP7 inactivation shortens the half-live of β-Catenin and GSK3β proteins. This study demonstrates that USP7 activation is crucial for proper pluripotency maintenance, which is provided through β-Catenin stabilization.

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泛素特异性蛋白酶7通过稳定β-连环蛋白维持小鼠胚胎干细胞的多能性。
胚胎干细胞(ESCs)来源于胚胎未分化的内细胞群,就其多能性而言,可以分化机体的所有细胞类型。因此,人类或小鼠ESCs可以作为无限的细胞来源用于许多研究或治疗方法。然而,由于ESCs具有无限的分化能力,在体外培养过程中维持其多能性是具有挑战性的。本研究通过细胞活力测定、形态学分析、碱性磷酸酶(ALP)染色、qPCR分析和Western Blotting等方法研究了USP7对小鼠ESCs (mESCs)多能性维持的影响。600 nM P5091对mESCs没有明显的毒性,但其泛素化蛋白总量增加,证明USP7得到了适当的抑制。形态学分析和ALP活性评价表明,GSK3和MEK的双重抑制和白血病抑制因子(LIF)的治疗可以保护USP7活性酶存在下的多能性。然而,USP7的失活降低了每个处理组的ALP活性并改变了细胞形态。这种形态变化和ALP活性降低说明mESCs已分化。这些发现得到了基因表达和蛋白分析的支持。USP7抑制后,多能性相关的Oct4、Nanog、c-Myc、Sox2和Klf4转录因子的基因表达量和蛋白量均显著降低。与此观察结果一起,还注意到β-Catenin表达的显著减少。USP7的失活缩短了β-Catenin和GSK3β蛋白的半衰期。这项研究表明,USP7的激活对于多能性维持至关重要,这是通过β-Catenin稳定提供的。
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